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High-Temperature Performance of Asphalt Mixtures: Preliminary Analysis for the Standard Technical Index Based on Gray Relational Analysis Method

机译:沥青混合物的高温性能:基于灰色关系分析方法的标准技术指标初步分析

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Aiming to evaluate the high-temperature performance of asphalt binders and asphalt mixtures and to investigate the reliability of the standard technical indexes to evaluate the performance of the asphalt, six typically used asphalt types were employed in this study. The standard high-temperature rheological test, the multiple stress creep recovery (MSCR) test, and the zero-shear viscosity (ZSV) test were employed to characterize the high-temperature performance and non-Newtonian fluid properties of the asphalt. Meanwhile, the high-temperature performance of the asphalt mixture was evaluated through the rutting tests based on the mixture design of AC-13. In general, the modified asphalt performed better than the unmodified asphalt according to the high-temperature rheological properties tests. The ranking of the six kinds of asphalt was confirmed to be different in various laboratory tests. The test results of the asphalt binders showed that the Tafpack Super- (TPS-) modified asphalt performed best in the MSCR and ZSV tests, while the low-grade asphalt PEN20 had the best technical indexes in the dynamic shear rheometer (DSR) test. Besides, the relation between the asphalt and the asphalt mixture was analyzed by gray relational analysis (GRA) method. The present rutting indicator G?/sin?δ?and?G?/1?sin?δ??tan?δ?1 for evaluating the asphalt mixtures’ high-temperature performance might no longer be suitable. The Cross/Williamson model was the most suitable for calculating and fitting the ZSV, which could be used as the key indicator of the high-temperature performance evaluation of the asphalt. This work lays a foundation for the further study of the high-temperature performance evaluation of asphalt binders.
机译:旨在评估沥青粘合剂和沥青混合物的高温性能,并研究标准技术指标的可靠性,以评估沥青的性能,六种通常使用的沥青类型在本研究中采用。采用标准高温流变试验,多重应力蠕变恢复(MSCR)试验和零剪切粘度(ZSV)试验表征沥青的高温性能和非牛顿流体性质。同时,通过基于AC-13的混合设计来评价沥青混合物的高温性能。通常,根据高温流变性能测试,改性沥青比未修饰的沥青更好。在各种实验室测试中确认六种沥青的排名在不同的实验室测试中是不同的。沥青粘合剂的测试结果表明,TAFPACK超级(TPS-)改性沥青在MSCR和ZSV测试中表现最佳,而低级沥青PEN20在动态剪切流量计(DSR)测试中具有最佳的技术指标。此外,通过灰色关系分析(GRA)方法分析了沥青与沥青混合料之间的关系。目前的车辙指示器G?/ SIN?Δδ?Δ/ 1?SIN?ΔΔΔΔΔ1用于评估沥青混合物的高温性能可能不再适合。交叉/威廉姆森模型最适合计算和拟合ZSV,可用作沥青的高温性能评价的关键指标。这项工作为进一步研究了沥青粘合剂的高温性能评价的进一步研究。

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